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Dielectric Properties Measurement of Biological Materials Using Non-Destructive Sensors

机译:使用无损传感器测量生物材料的介电性能

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The authors' research work has for objective the study of a sensor with planar resonator for applications in the non-destructive control. In this context, two approaches were defined. In a first part, a conception, a modeling, a simulation with commercial software (HFSS, CST), a realization and measurements were treated on Rectangular Patch Resonators (RPR). The proposed theoretical analysis is based on the Moment Method (MoM) via the Galerkin's approach, in which three types of entire domain basis functions are used to expand the patch currents. While, the first two types of basic functions involve a set of sinusoidal cavity modes without edge conditions (sbf-wo-ec) and with edge conditions (sbf-w-ec), and in order to incorporate the edge conditions (cp-ec), the third one consists of Chebyshev polynomials combinations with weighting factors. These last ones as well as the Green Dyadic spectral functions are efficiently implanted with compact Fortran 90 codes. Two EM commercial software HFSS and CST was used to validate the proposed RPR prototypes. The exactness of the obtained results is estimated using four prototypes operating near 6 GHz, taking into account only the fundamental mode resonant frequency. The theoretical model is compared with the simulations and the measurement results. The second approach of the authors' work which is developed in this paper is focused on the characterization of biological materials in vitro using the RPR prototypes proposed as applicator in the non-destructive control and the medical domain to find the abnormalities of these tissues such as: eczema, psoriasis, cancer, etc. The authors' center of interest will be managed towards the dielectric properties of the biological material to extract the relative permittivity and the loss factor on several samples (liver, fat, chicken, butter, foie gras, etc.).
机译:作者的研究工作旨在客观地研究一种用于非破坏性控制的平面谐振器传感器。在这种情况下,定义了两种方法。在第一部分中,在矩形贴片谐振器(RPR)上处理了概念,建模,商业软件(HFSS,CST)的仿真,实现和测量。所提出的理论分析是基于通过Galerkin方法的矩量法(MoM),其中使用了三种类型的整个域基函数来扩展贴片电流。而前两种基本功能涉及一组无边缘条件(sbf-wo-ec)和有边缘条件(sbf-w-ec)的正弦腔模式,并且为了合并边缘条件(cp-ec ),第三个由具有权重因子的Chebyshev多项式组合组成。这些最后一个以及Green Dyadic频谱函数都有效地植入了紧凑的Fortran 90代码。使用两个EM商业软件HFSS和CST来验证建议的RPR原型。使用仅在基本模式谐振频率下工作的四个在6 GHz附近工作的原型来估算获得的结果的准确性。将理论模型与仿真和测量结果进行比较。本文开发的作者工作的第二种方法着眼于使用RPR原型在无损控制和医学领域中应用的RPR原型体外表征生物材料,以发现这些组织的异常情况,例如:湿疹,牛皮癣,癌症等。作者的研究中心将针对生物材料的介电特性进行管理,以提取几种样品(肝脏,脂肪,鸡肉,黄油,鹅肝,等等。)。

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